Singh Balbir, Natsume Kiyohisa
Graduate School of Life Science and Systems Engineering, Kyushu Institute of Technology, Kitakyushu, Fukuoka, Japan.
Department of Biomedical Engineering, Vanderbilt University, Nashville, Tennessee 37232 USA.
Cogn Neurodyn. 2023 Jun;17(3):605-620. doi: 10.1007/s11571-022-09864-5. Epub 2022 Aug 8.
The negative-going movement-related cortical potentials are associated with the preparation and execution of the voluntary movements. Thus far, the readiness potential (RP) for simple movements involving either the upper or lower body segments has been studied. We investigated the ability to decode the sit-to-stand movement's intention from the RP, which uses the upper and lower body segments. Therefore, we performed scalp electroencephalography in healthy volunteers. A gyro sensor was placed on the back to detect the movement of the upper body segment, and an electromyogram electrode was placed on the surface of the hamstrings and quadriceps to detect movement of the lower body segment. Our study revealed that a negative RP was evoked around 2 to 3 s before the onset of the upper body movement in the sit-to-stand movement in response to the start cue. The RP had a negative peak and a steeper negative slope from - 0.8 to - 0.001 s just before the onset of the upper body movement. Negative-going RPs reflect the intention of preparation/execution of the sit-to-stand movement. Therefore, we used the morphological component analysis method to extract the morphology of RPs from a single trial. This morphology of RPs is a promising aspect for limb neurotrophies or neurorehabilitation devices.
负向运动相关皮层电位与自主运动的准备和执行相关。到目前为止,已经对涉及上半身或下半身节段的简单运动的准备电位(RP)进行了研究。我们研究了从使用上半身和下半身节段的RP中解码坐立运动意图的能力。因此,我们对健康志愿者进行了头皮脑电图检查。在背部放置一个陀螺仪传感器以检测上半身节段的运动,并在腘绳肌和股四头肌表面放置一个肌电图电极以检测下半身节段的运动。我们的研究表明,在坐立运动中,响应开始提示,在上半身运动开始前约2至3秒诱发了负向RP。在上半身运动开始前,RP在-0.8至-0.001秒有一个负峰和更陡的负斜率。负向RP反映了坐立运动准备/执行的意图。因此,我们使用形态成分分析方法从单个试验中提取RP的形态。RP的这种形态对于肢体神经营养或神经康复设备来说是一个有前景的方面。